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山地林下参生长势及皂苷积累的微生态机制与仿生微生物肥料特性

Microecological mechanisms of mountainous forest cultivated ginseng growth vigor and saponin accumulation, and the characterization of bionic microbial fertilizer.

作者信息

Pang Fengyu, Gao Yugang, Zhuang Zhenqi, Li Changju, Zhao Yan, Liu Qun

机构信息

College of Chinese Medicinal Materials, Jilin Agricultural University, Changchun, China.

Institute of Botany, Jiangsu Province and Chinese Academy of Sciences (Nanjing Botanical Garden Mem. Sun Yat-Sen), Nanjing, China.

出版信息

Front Microbiol. 2025 May 13;16:1548481. doi: 10.3389/fmicb.2025.1548481. eCollection 2025.

Abstract

INTRODUCTION

A study on the soil microecological mechanisms influencing the growth vigor and saponin accumulation of mountainous forest cultivated ginseng (MFCG) under various forest types.

METHODS

Using MFCG from different forest types as experimental material, the correlation and functional analysis of MFCG growth vigor, ginseng saponin content, and soil nutrient elements in their rhizosphere were conducted to clarify the soil microecological mechanisms by which different forest types affect the growth vigor and saponin accumulation of understory ginseng. Based on these microecological mechanisms, a bionic microbial fertilizer was developed and characterized.

RESULTS

The agronomic traits and saponin content (Re, Rc, Rb2, and Rb3) of MFCG in the var. mongholica Litv. (PSV) group were significantly higher than those in the Fisch. ex Ledeb. (QMF) and (Rupr.) Kuzen (LGK) groups ( < 0.05). The total content of these four monomeric saponins in the PSV group was 35.1 and 45.56% higher than that in the QMF and LGK groups, respectively. Significant differences ( < 0.05) were observed between the PSV group and the QMF and LGK groups in terms of the rhizosphere soil microbial diversity and physicochemical indicators such as nutrient elements. The agronomic traits and saponin content of MFCG were positively correlated with chemical indicators in the rhizosphere soil, including Cu, Ca, Mg, Zn, B, Fe, Mo, Mn, Organic matter (OM), Available phosphorus (AP), Available nitrogen (AN), and Available potassium (AK). Based on the microbial diversity and nutrient elements positively correlated with MFCG in the rhizosphere soil, a bionic microbial fertilizer formula was optimized.

DISCUSSION

The microecological mechanism behind the growth vigor and saponin accumulation of understory ginseng involves an increase in beneficial microorganisms and nutrient elements, along with a reduction in harmful microorganisms and detrimental elements. The bionic microbial fertilizer promoted MFCG growth and saponin accumulation while improving soil nutrient levels, bulk density, and water-holding capacity.

摘要

引言

一项关于不同森林类型下影响山地林下参生长活力和皂苷积累的土壤微生态机制的研究。

方法

以不同森林类型的山地林下参为实验材料,对山地林下参的生长活力、人参皂苷含量及其根际土壤养分元素进行相关性和功能分析,以阐明不同森林类型影响林下参生长活力和皂苷积累的土壤微生态机制。基于这些微生态机制,研发并表征了一种仿生微生物肥料。

结果

五叶参组山地林下参的农艺性状和皂苷含量(人参皂苷Re、Rc、Rb2和Rb3)显著高于三七组和圆参组(P<0.05)。五叶参组这四种单体皂苷的总含量分别比三七组和圆参组高35.1%和45.56%。在根际土壤微生物多样性以及养分元素等理化指标方面,五叶参组与三七组和圆参组之间存在显著差异(P<0.05)。山地林下参的农艺性状和皂苷含量与根际土壤中的化学指标呈正相关,这些化学指标包括铜、钙、镁、锌、硼、铁、钼、锰、有机质(OM)、有效磷(AP)、有效氮(AN)和有效钾(AK)。基于根际土壤中与山地林下参呈正相关的微生物多样性和养分元素,优化了仿生微生物肥料配方。

讨论

林下参生长活力和皂苷积累背后的微生态机制包括有益微生物和养分元素增加,有害微生物和有害元素减少。该仿生微生物肥料促进了山地林下参的生长和皂苷积累,同时提高了土壤养分水平、容重和持水能力。

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